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含双硫仑和低取代甲基纤维素的滴眼液对兔模型降低眼压的作用。

Effect of Eye Drops Containing Disulfiram and Low-Substituted Methylcellulose in Reducing Intraocular Pressure in Rabbit Models.

作者信息

Nagai Noriaki, Yoshioka Chiaki, Mano Yu, Ito Yoshimasa, Okamoto Norio, Shimomura Yoshikazu

机构信息

a Faculty of Pharmacy , Kinki University , Higashi-Osaka, Osaka , Japan and.

b Department of Ophthalmology , Kinki University Faculty of Medicine , Osaka-Sayama, Osaka , Japan.

出版信息

Curr Eye Res. 2015;40(10):990-1000. doi: 10.3109/02713683.2014.971187. Epub 2014 Oct 20.

Abstract

PURPOSE

We attempted to develop anti-glaucoma eye drops using 0.5% disulfiram (DSF), 5% 2-hydroxypropyl-β-cyclodextrin, 0.1% hydroxypropylmethylcellulose, and 2% methylcellulose (MC) (DSF eye drops with MC), and tested the ability of a DSF eye drops with MC to reduce intraocular pressure (IOP) in rabbit models.

METHODS

Elevated IOP was induced by the rapid infusion of 5% glucose solution (15 ml/kg of body weight) through the marginal ear vein or by keeping rabbits in the dark for 5 h. IOP and the nitric oxide (NO) level in the aqueous humor were measured with an electronic tonometer and by a microdialysis method, respectively. ΔIOP and ΔNO values were analyzed as the differences in IOP and NO in rabbits instilled with saline or eye drops, respectively.

RESULTS

Increased IOP in rabbit models was reduced by the instillation of DSF eye drops with or without MC, and a close relationship was observed between IOP and NO levels in rabbit receiving a rapid infusion of isotonic glucose. We present kinetic parameters [secondary AUC (prolonged drug effect) and secondary MRT (prolonged effective time)] analyzed as the area under the curve (AUC) of ΔIOP or ΔNO versus time using rabbits instilled with eye drops 10, 50, or 90 min prior to the infusion of the isotonic glucose solution. The elevations in IOP and NO level were reduced by the instillation of DSF eye drops with or without MC; the addition of MC increased the secondary AUC and MRT of DSF eye drops.

CONCLUSIONS

The present study demonstrates that 0.5% DSF eye drops suppress increased IOP in rabbit models, probably by inhibiting the elevation in NO levels. In addition, we propose a kinetic analysis method to predict drug effects and effective time. These findings suggest that a low-substituted MC-based drug delivery system promotes drug effectiveness and effective time.

摘要

目的

我们尝试使用0.5%双硫仑(DSF)、5% 2-羟丙基-β-环糊精、0.1%羟丙基甲基纤维素和2%甲基纤维素(MC)研制抗青光眼滴眼液(含MC的DSF滴眼液),并在兔模型中测试含MC的DSF滴眼液降低眼压(IOP)的能力。

方法

通过经耳缘静脉快速输注5%葡萄糖溶液(15 ml/kg体重)或使兔子在黑暗中保持5小时来诱导眼压升高。分别使用电子眼压计和微透析法测量房水中的眼压和一氧化氮(NO)水平。ΔIOP和ΔNO值分别作为滴注生理盐水或滴眼液的兔子眼压和NO的差异进行分析。

结果

滴注含或不含MC的DSF滴眼液可降低兔模型中升高的眼压,并且在快速输注等渗葡萄糖的兔子中观察到眼压与NO水平之间存在密切关系。我们给出了动力学参数[二次AUC(延长药物作用)和二次MRT(延长有效时间)],其通过使用在输注等渗葡萄糖溶液前10、50或90分钟滴注滴眼液的兔子,分析ΔIOP或ΔNO随时间的曲线下面积(AUC)得到。滴注含或不含MC的DSF滴眼液可降低眼压和NO水平的升高;添加MC增加了DSF滴眼液的二次AUC和MRT。

结论

本研究表明,0.5% DSF滴眼液可能通过抑制NO水平升高来抑制兔模型中升高的眼压。此外,我们提出了一种动力学分析方法来预测药物作用和有效时间。这些发现表明,基于低取代度MC的药物递送系统可提高药物疗效和有效时间。

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